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Simulation Environment
100%
Reactor Pressure Vessel
100%
Fluid-structure Interaction
100%
SBLOCA
100%
Pressure Boundary Condition
100%
APROS
50%
System Code
50%
Three-dimensional (3D)
50%
Prediction Accuracy
50%
Computational Fluid Dynamics Simulation
50%
Coolant
50%
Mass Flow
50%
Water Temperature
50%
Turbulent Fluidization
50%
Interaction Phenomena
50%
Pipe Breaks
50%
ABAQUS
50%
MpCCI
50%
Two-way Fluid-structure Interaction
50%
Directional Coupling
50%
Wall Pressure
50%
Wall Strain
50%
Fully Coupled Simulation
50%
Wall Displacement
50%
STAR-CD
50%
Guillotine
50%
Two-phase Simulation
50%
Computational Fluid Dynamics Software
50%
Pressure Wave
50%
Engineering
Simulation Environment
100%
Simulation Result
100%
Loss of Coolant Accidents
100%
Reactor Pressure Vessel
100%
Computational Fluid Dynamics
100%
Fluid-Structure Interaction
100%
Boundary Condition
100%
Abaqus
50%
Accurate Prediction
50%
Wall-Pressure
50%
Phase Simulation
50%
Fluid Flow
50%
Elastic Wave
50%
INIS
simulation
100%
environment
100%
validation
100%
large break loss-of-coolant accident
100%
fluid-structure interactions
100%
reactors
33%
boundary conditions
33%
pipes
33%
pressure vessels
33%
computational fluid dynamics
33%
comparative evaluations
16%
water
16%
deformation
16%
coupling
16%
strains
16%
experimental data
16%
sensitivity
16%
computer codes
16%
modeling
16%
walls
16%
prediction
16%
fluid flow
16%
coolants
16%
stars
16%